Broadband decoupling of intensity and polarization with vectorial Fourier metasurfaces

被引:0
作者
Qinghua Song
Arthur Baroni
Pin Chieh Wu
Sébastien Chenot
Virginie Brandli
Stéphane Vézian
Benjamin Damilano
Philippe de Mierry
Samira Khadir
Patrick Ferrand
Patrice Genevet
机构
[1] Université Côte d’Azur,Department of Photonics
[2] CNRS,undefined
[3] CRHEA,undefined
[4] Rue Bernard Gregory,undefined
[5] Sophia Antipolis,undefined
[6] Aix Marseille Univ,undefined
[7] CNRS,undefined
[8] Centrale Marseille,undefined
[9] Institut Fresnel,undefined
[10] National Cheng Kung University,undefined
来源
Nature Communications | / 12卷
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摘要
Intensity and polarization are two fundamental components of light. Independent control of them is of tremendous interest in many applications. In this paper, we propose a general vectorial encryption method, which enables arbitrary far-field light distribution with the local polarization, including orientations and ellipticities, decoupling intensity from polarization across a broad bandwidth using geometric phase metasurfaces. By revamping the well-known iterative Fourier transform algorithm, we propose “à la carte” design of far-field intensity and polarization distribution with vectorial Fourier metasurfaces. A series of non-conventional vectorial field distribution, mimicking cylindrical vector beams in the sense that they share the same intensity profile but with different polarization distribution and a speckled phase distribution, is demonstrated. Vectorial Fourier optical metasurfaces may enable important applications in the area of complex light beam generation, secure optical data storage, steganography and optical communications.
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